DIRECT MEASUREMENTS OF COMPRESSIVE AND TENSILE STRAIN DURING SHOCK BREAKOUT BY USE OF SUBNANOSECOND X-RAY-DIFFRACTION

JOURNAL OF APPLIED PHYSICS 68:9 (1990) 4531-4534

Authors:

JS WARK, D RILEY, NC WOOLSEY, G KEIHN, RR WHITLOCK

F2-PUMPED NO - LASER OSCILLATION AT 218NM AND PROSPECTS FOR NEW LASER TRANSITIONS IN THE 160-250NM REGION

IEEE JOURNAL OF QUANTUM ELECTRONICS 26:9 (1990) 1529-1535

Authors:

SM HOOKER, CE WEBB

SUBNANOSECOND X-RAY-POWDER DIFFRACTION

JOURNAL OF APPLIED CRYSTALLOGRAPHY 23 (1990) 441-443

Authors:

NC WOOLSEY, JS WARK, D RILEY

THE ABSORPTION OF 158-NM RADIATION IN NITRIC-OXIDE - THE PROSPECTS FOR AN OPTICALLY PUMPED VACUUM ULTRAVIOLET-LASER

APPLIED PHYSICS B-PHOTOPHYSICS AND LASER CHEMISTRY 51:2 (1990) 127-131

Authors:

SM HOOKER, CE WEBB

Measurement of the mass ablation rate for 0.53 μm random phased laser irradiation of spherical targets

(1989) 143

Authors:

PA Norreys, N Miyanaga, H Nishimura, K Kondo, H Azechi, O Maegawa, A Nishiguchi, M Yamanaka, K Mima, C Yamanaka, S Nakai

Abstract:

The mass ablation rate has been measured using the 12-beam GEKKO XII glass laser. An X-ray pinhole camera coupled to a streak camera was used to provide both spatial and temporal history of the emission from buried maker layers. The camera was filtered by 0.75 μm of Al to enhance the image of the cool, denser plasma near the ablation front. The targets (diameter approximately 500 μm) were both polymer shells and solid polymer pellets and were overcoated with up to four maker layers sandwiched between CH ablator layers. Laser energies of up to 8 kJ in 1.7 ns were incident on the targets, with absorbed irradiances of up to 4.0 × 1014 W-cm-2. Good agreement has been found between the experiment and a one-dimensional hydrodynamic code in which the heat flow is obtained from the Fokker-Planck equation. The mass data were consistent with the temporal behavior of spectral line emissions observed by a streaked crystal spectrograph. The introduction of random phase plates had no significant influence on the mass ablation rate for imploding targets. The results indicate that a highly uniform drive pressure has been achieved for the GEKKO XII laser.